Humidification module, air treatment component and air conditioner

By setting a side flow channel in the humidification module, the problems of high wind resistance and noise caused by the full coverage of the wet film air outlet are solved, achieving a low wind resistance and low noise humidification effect, and improving the quiet performance of air handling components and air conditioners.

CN223691204UActive Publication Date: 2025-12-19GD MIDEA AIR CONDITIONING EQUIP CO LTD +1
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Patent Information

Application Number
CN202520007214.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-02
Publication Date
2025-12-19
Estimated Expiration
2035-01-02

AI Technical Summary

Technical Problem

The humidification modules in existing air handling components have high air resistance due to the design of the wet film fully covering the air outlet, which increases the energy consumption and noise of the equipment, especially affecting the user experience in quiet environments.

Method used

By setting a side flow channel in the humidification module, the airflow bypasses the wet film assembly, reducing wind resistance and motor speed and noise. By designing a side flow channel around the humidification air duct, part of the airflow bypasses the wet film assembly, reducing wind resistance and improving ventilation efficiency.

Benefits of technology

It reduces wind resistance and noise, improves the equipment's quietness and ventilation efficiency, reduces motor speed, and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a humidification module, air handling part and air conditioner, humidification module includes air duct frame and wet membrane subassembly, air duct frame defines humidification air duct, the bottom of humidification air duct is open to form air intake area; the wet film assembly is arranged on the humidifying air channel, and the humidifying air channel comprises a side flow channel. In the orthographic projection of the humidifying module to the horizontal plane, the side flow channel is located on the periphery of the wet film assembly so that airflow flowing through the side flow channel can avoid the wet film assembly. According to the humidification module, the side flow channel is arranged on the periphery of the humidification air channel, so that part of airflow upwards entering the humidification air channel from the air inlet area can bypass the wet film assembly, direct obstruction of a wet film to part of airflow is reduced, wind resistance is reduced, and ventilation efficiency is improved; and meanwhile, the rotating speed and noise of the motor are reduced, and the overall mute performance of the equipment is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technology field especially is related to a humidification module, air handling component and air conditioner. BACKGROUND

[0002] In the related art, the humidification module in the air handling component mainly adopts the wet film humidification scheme with the design that the wet film fully covers the air outlet. However, this scheme also brings some problems that cannot be ignored. Since the wet film fully covers the air outlet, the air resistance is relatively large, the air is subjected to a large resistance when passing through the wet film, and the motor speed has to be increased in order to ensure the air volume, which not only increases the energy consumption of the equipment, but also often generates a large noise during the operation of the equipment. Such noise has a bad influence on the user's experience, especially in a quiet environment, the noise problem is more prominent. SUMMARY

[0003] The utility model aims at solving one of the technical problems in the prior art. To this end, the utility model provides a humidification module, which has small air resistance when air flows through the humidification module, high ventilation efficiency, and reduced motor speed and noise, thereby improving the overall noise performance of the equipment.

[0004] The utility model further provides an air handling component with the humidification module.

[0005] The utility model further provides an air conditioner with the humidification module or the air handling component.

[0006] According to the humidification module of the first aspect of the utility model, the humidification module includes an air duct frame and a wet film assembly, the air duct frame defines a humidification air duct, the bottom of the humidification air duct is open to form an air inlet area; the wet film assembly is arranged in the humidification air duct, and the humidification air duct includes a side bypass flow channel; wherein in the orthogonal projection of the humidification module to the horizontal plane, the side bypass flow channel is located at the periphery of the wet film assembly, so that the air flow passing through the side bypass flow channel can bypass the wet film assembly.

[0007] According to the humidification module of the utility model, the side bypass flow channel is arranged at the periphery of the humidification air duct, so that part of the air flow entering the humidification air duct from the air inlet area can bypass the wet film assembly, the direct obstruction of the wet film to part of the air flow is reduced, the air resistance is reduced, the ventilation efficiency is improved, the motor speed and noise are reduced, and the overall noise performance of the equipment is improved.

[0008] In some embodiments, the wet film assembly includes a wet film, and the two side surfaces of the wet film in the thickness direction are wet film ventilation surfaces, and the wet film ventilation surfaces are inclined to the horizontal plane.

[0009] In some embodiments, the wet membrane ventilation surface extends downwardly along a front-to-back direction, and the wet membrane assembly is provided with the side bypass flow channels on left and right sides thereof.

[0010] In some embodiments, the air duct frame comprises a front frame plate, a rear frame plate, and left and right side frame plates, the humidification air duct is formed between the front frame plate, the rear frame plate, and the left and right side frame plates, and the wet membrane assembly is provided separately from the left and right side frame plates so that the side bypass flow channels are formed between the side frame plates and the wet membrane assembly.

[0011] In some embodiments, the front frame plate is provided with insertion openings extending along a left-right direction, the air duct frame is provided with guide rail structures, the guide rail structures are two and extend downwardly and rearwardly from left and right ends of the insertion openings, left and right ends of the wet membrane assembly are slidably fitted with the guide rail structures, the guide rail structures are provided separately from the side frame plates on corresponding sides, and the side bypass flow channels are formed between the guide rail structures and the side frame plates on corresponding sides.

[0012] In some embodiments, the air duct frame further comprises a connecting beam provided separately on a rear side of the front frame plate, left and right ends of the connecting beam are connected with lower ends of the guide rail structures and the side frame plates on corresponding sides, a space directly below the guide rail structures is open to form a part of the air inlet area, and a space directly below each of the guide rail structures and the side frame plates on corresponding sides is open to form a part of the air inlet area.

[0013] In some embodiments, the side bypass flow channels are further formed between the front frame plate and the rear frame plate.

[0014] In some embodiments, the air duct frame comprises an integrated first frame and an integrated second frame, the first frame is assembled on a front side of the second frame, the first frame comprises the front frame plate, the guide rail structures, and the connecting beam, the second frame comprises the rear frame plate, left and right sides of the first frame are provided with side plates, left and right sides of the second frame are provided with side frames, the side plates and the side frames are combined as the side frame plates, and the connecting beam is connected with rear ends of the side plates.

[0015] In some embodiments, the humidification module further comprises a water tray provided on a bottom of the air duct frame, the water tray is provided with a ventilation opening extending along an up-down direction, the ventilation opening is in communication with the air inlet area at a bottom of the humidification air duct, the water tray defines a water pool provided separately from the ventilation opening, a top of the water pool is open, and a lower end of the wet membrane extends into the water pool.

[0016] In some embodiments, in a normal projection of the humidifying module to a horizontal plane, the air vent comprises a main air vent area and a side air vent area, the wet membrane assembly covers the main air vent area, and the side air vent area is located at an outer peripheral area of the wet membrane assembly and overlaps at least part of the side bypass flow channel.

[0017] In some embodiments, two sides of the main air vent area are respectively provided with the side air vent area, the water pool comprises a second water pool, a lower end of the wet membrane assembly extends into the second water pool, the water tray comprises a partition wall spaced between the air vent and the second water pool, the partition wall comprises a support wall portion and a limiting wall portion, an inclination direction of the support wall portion is consistent with an inclination direction of the wet membrane ventilation surface, the limiting wall portion is located at two ends of the support wall portion and is recessed towards the second water pool relative to the support wall portion, a lower end of the wet membrane assembly is limited between the limiting wall portions on two sides, and a recess formed by the recessed limiting wall portions constitutes at least part of the side air vent area.

[0018] In some embodiments, the water tray comprises a front wall and a side wall, the front wall is spaced in front of and behind the partition wall, left and right ends of the front wall and left and right ends of the partition wall are respectively connected by the side wall, the air vent is surrounded between the front wall, the partition wall and the two side walls, the support wall portion and the front wall form the main air vent area, and the limiting wall portion and end portions of the side wall and the front wall form the side air vent area.

[0019] In some embodiments, the water pool further comprises a first water pool and a third water pool, the first water pool is located at a front side of the front wall, the third water pool is located at a side of the side wall away from the air vent and communicates the first water pool and the second water pool, and the humidifying module further comprises a water tank, the water tank is arranged above the water tray and injects water into the first water pool.

[0020] In some embodiments, the side bypass flow channel is arranged above the side air vent area on each side.

[0021] According to the air treatment component of the second aspect of the present application, the air treatment component comprises a fresh air module, a purification module and a humidifying module, the fresh air module comprises a fresh air fan, the purification module is located downstream of the fresh air fan, and the humidifying module is the humidifying module according to any one of the embodiments of the first aspect of the present application and is arranged downstream of the purification module.

[0022] According to the air treatment component of the present application, by arranging the humidifying module of the first aspect, the ventilation resistance and noise of the air treatment component can be reduced.

[0023] According to the air conditioner of the third aspect of the present application, the air conditioner comprises the humidifying module according to any one of the first aspect of the present application or the air treatment component according to the second aspect of the present application.

[0024] According to the air conditioner of the present application, the working noise of the air conditioner can be reduced by setting the humidifying module of the first aspect or the air treatment component of the second aspect.

[0025] The additional aspects and advantages of the present application will be partially given in the following description, partially become obvious from the following description, or be understood by the practice of the present application. BRIEF DESCRIPTION OF DRAWINGS

[0026] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced as follows, and it should be understood that the following drawings only show some embodiments of the present application, and therefore should not be regarded as a limitation on the scope, and for those skilled in the art, other related drawings can also be obtained without creative labor on the basis of these drawings.

[0027] Figure 1 is a schematic diagram of the humidifying module according to one embodiment of the present application;

[0028] Figure 2 is Figure 1 a front view of the humidifying module shown in FIG.

[0029] Figure 3 is Figure 2 a V1-V1 cross-sectional view shown in FIG.

[0030] Figure 4 is Figure 1 an assembly diagram of the humidifying module hidden the second frame shown in FIG.

[0031] Figure 5 is Figure 4 an enlarged view at A shown in FIG.

[0032] Figure 6 is a schematic diagram of the humidifying module according to another embodiment of the present application;

[0033] Figure 7 is a schematic diagram of the first frame according to one embodiment of the present application;

[0034] Figure 8 is Figure 6 an exploded view of the humidifying module shown in FIG.

[0035] Figure 9 is Figure 8 a schematic diagram of the water pan shown in FIG.

[0036] Figure 10 is Figure 6 a partial cross-sectional view of the humidifying module shown in FIG. 1;

[0037] Figure 11 is Figure 10 a magnified view of B shown in FIG. 2;

[0038] Figure 12 is a schematic view of an air handling component according to one embodiment of the present application;

[0039] Figure 13 is Figure 12 a V2-V2 cross-sectional view shown in FIG. 3;

[0040] Figure 14 is an exploded view of an air conditioner according to one embodiment of the present application;

[0041] Figure 15 is a schematic view of an air conditioner according to one embodiment of the present application.

[0042] Reference Signs:

[0043] air conditioner 100;

[0044] air handling component 1;

[0045] humidifying module 12;

[0046] air duct frame 122;

[0047] humidifying air duct 122a;

[0048] side-by-side air duct 122a1; air inlet area 122a2;

[0049] front frame plate 1223; insertion port 12231; guide rail structure 12232;

[0050] rear frame plate 1224; side frame plate 1225; connecting beam 1226;

[0051] first frame 1221; side plate 12211;

[0052] second frame 1222; side frame 12221;

[0053] wet film assembly 123;

[0054] wet film 1231; wet film ventilation surface 12311;

[0055] side frame 1233;

[0056] water tray 121;

[0057] Water tank 1210; first water tank 1211; second water tank 1212; third water tank 1219;

[0058] Vent 1213; main vent area 12131; side vent area 12132;

[0059] Partition wall 1215; support wall part 12151; limiting wall part 12152; groove 12153;

[0060] Front wall 1216; side wall 1217;

[0061] Water tank 124;

[0062] Fresh air module 11; fresh air fan 111; centrifugal fan 111a;

[0063] Purification module 13;

[0064] Ventilation and heat exchange component 2. DETAILED DESCRIPTION

[0065] The embodiments of the present application are described below in detail, examples of which are shown in the drawings, wherein the same or similar notations represent the same or similar elements or elements having the same or similar functions throughout. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and should not be understood as limiting the present application.

[0066] The following disclosure provides many different embodiments, or examples, for implementing different structures of the present application. For the purpose of simplification, the components and arrangements of specific examples are described in the following. Of course, they are only examples and are not intended to limit the present application. In addition, the present application can repeatedly refer to numbers and / or letters in different examples. Such repetition is for the purpose of simplification and clarity, and does not indicate the relationship between the various embodiments and / or arrangements discussed. In addition, the present application provides examples of various specific processes and materials, but those skilled in the art can realize the applicability of other processes and / or the use of other materials.

[0067] Next, with reference to the drawings, a humidification module 12 according to the first aspect of the present application is described.

[0068] Referring to Figure 1 , Figure 2 , Figure 3 , Figure 4 and Figure 5The humidification module 12 comprises an air duct frame 122 and a wet film assembly 123, the air duct frame 122 defines a humidification air duct 122a, the bottom of the humidification air duct 122a is open to form an air inlet area 122a2, and the wet film assembly 123 is arranged in the humidification air duct 122a, and the humidification air duct 122a comprises a side bypass flow channel 122a1. Wherein, in the orthogonal projection of the humidification module 12 to the horizontal plane, the side bypass flow channel 122a1 is located at the periphery of the wet film assembly 123, so that the airflow flowing through the side bypass flow channel 122a1 avoids the wet film assembly 123.

[0069] In the above technical solution, by arranging the side bypass flow channel 122a1 at the periphery of the humidification air duct 122a, part of the airflow entering the humidification air duct 122a from the air inlet area 122a2 upwards can bypass the wet film assembly 123, reducing the direct obstruction of the wet film 1231 to part of the airflow, thereby reducing the air resistance and improving the ventilation efficiency. Moreover, the reduction of air resistance also means that the power required by the fan when driving the airflow is reduced, thereby reducing the rotation speed and noise of the motor, and improving the overall mute performance of the equipment.

[0070] In the embodiments of the present application, the wet film assembly 123 is arranged in the humidification air duct 122a, wherein “arranged in” means that at least part of the wet film assembly 123 is located inside the humidification air duct 122a, for example, the wet film assembly 123 can be completely located inside the humidification air duct 122a, or the wet film assembly 123 can only have a part located inside the humidification air duct 122a, and the remaining part located outside the humidification air duct 122a.

[0071] The side bypass flow channel 122a1 is located at the periphery of the wet film assembly 123, wherein “periphery” means that in the orthogonal projection of the humidification module 12 to the horizontal plane, the side bypass flow channel 122a1 is located outside the outer contour of the orthogonal projection of the wet film assembly 123. This design allows part of the airflow to bypass the wet film assembly 123, thereby avoiding the necessity for all the airflow to flow through the wet film assembly 123, thereby reducing the air resistance and noise. At the same time, the side bypass flow channel 122a1 can also serve as a backup channel and play a role when the wet film 1231 is blocked or the humidification amount needs to be adjusted.

[0072] It can be understood that “periphery” can mean that the edge of the orthogonal projection of the side bypass flow channel 122a1 to the horizontal plane is arranged immediately adjacent to or at a certain distance from the edge of the orthogonal projection of the wet film assembly 123 to the horizontal plane, and the specific relative position can be adjusted according to actual needs to optimize the airflow path and humidification effect. Exemplarily, the side bypass flow channel 122a1 can be designed as a ring-shaped flow channel surrounding the wet film assembly 123, or the side bypass flow channel 122a1 can also be designed as multiple and dispersed at multiple positions around the wet film assembly 123.

[0073] In some embodiments, referring to Figure 3The wet film assembly 123 includes a wet film 1231, and two side surfaces of the wet film 1231 in the thickness direction are respectively a wet film ventilation surface 12311, which is inclined to the horizontal plane. In this way, the air flow entering the humidifying air duct 122a from the air inlet area 122a2 upwards can enter the wet film 1231 from the wet film ventilation surface 12311 below to be humidified, and then flow out from the wet film ventilation surface 12311 above.

[0074] Therefore, the inclined wet film ventilation surface 12311 can increase the contact area of the wet film 1231 with the air flow, so that the air flow can be more fully contacted with the wet film 1231 when passing through the wet film 1231, thereby improving the humidification efficiency.

[0075] In the above technical solution, the inclination angle of the wet film ventilation surface 12311 can be adjusted as needed. For example, a smaller inclination angle can be designed, or a larger inclination angle can also be designed.

[0076] The wet film 1231 can be in the shape of a flat plate, or can be designed in different shapes, for example, can be designed in a wave shape, an arc shape, etc., to increase the contact area and contact time of the wet film 1231 with the air flow, and further improve the humidification effect.

[0077] In addition, the number of wet film assemblies 123 is not limited, and can be one or more. When it is one, the air resistance can be reduced, and when it is more, a plurality of inclined wet film assemblies 123 can be used in combination, and the plurality of inclined wet film assemblies 123 are arranged in sequence along the air flow direction to form multi-stage humidification, so as to achieve a larger humidification area and a stronger humidification effect.

[0078] In some embodiments, referring to Figure 4 and Figure 5 , the wet film ventilation surface 12311 extends downwardly along the direction from front to back, and the left and right sides of the wet film assembly 123 are respectively provided with a side bypass flow channel 122a1.

[0079] In the above technical solution, by arranging the side bypass flow channel 122a1 on the left and right sides of the wet film assembly 123, on the one hand, the air resistance can be reduced to a greater extent, and on the other hand, the air passing through the side bypass flow channel 122a1 can also be mixed with the air humidified by the wet film assembly 123, which is beneficial to improve the humidity uniformity of the outlet air and improve the user experience.

[0080] In the above technical solution, when the left and right sides of the wet film assembly 123 are respectively provided with the side bypass flow channel 122a1, the number of side bypass flow channels 122a1 on each side can be one or a plurality of spaced apart.

[0081] In some embodiments, referring to Figure 6 ,Figure 7 and Figure 8 The air duct frame 122 includes a front frame plate 1223, a rear frame plate 1224, and two side frame plates 1225, a humidification air duct 122a is formed between the front frame plate 1223, the rear frame plate 1224, and the two side frame plates 1225, and the wet membrane assembly 123 is arranged separately from the two side frame plates 1225 on the left and right sides, so that a side bypass flow channel 122a1 is formed between the side frame plate 1225 and the wet membrane assembly 123.

[0082] In the above technical solution, by arranging the side bypass flow channel 122a1 between the wet membrane assembly 123 and the two side frame plates 1225 on the left and right sides, the space of the humidification air duct 122a in the left-right direction can be fully utilized, which simplifies the design and increases the volume of the side bypass flow channel 122a1.

[0083] In some embodiments, referring to Figure 6 , Figure 7 and Figure 8 The front frame plate 1223 has an insertion port 12231 extending in the left-right direction, that is, the length direction of the insertion port 12231 is the left-right direction, so that by arranging the insertion port 12231 extending in the left-right direction on the front frame plate 1223, the installation and disassembly of the wet membrane assembly 123 are facilitated. This design allows the user to easily replace or clean the wet membrane assembly 123, reduces maintenance costs, and improves the reliability and service life of the equipment.

[0084] In some embodiments, referring to Figure 7 The air duct frame 122 is provided with a guide rail structure 12232, the guide rail structure 12232 is two and extends downward and rearward from the left and right ends of the insertion port 12231, referring to Figure 4 The left and right ends of the wet membrane assembly 123 are respectively slidably matched with the two guide rail structures 12232 (for example, the wet membrane assembly 123 includes a wet membrane 1231 and a mesh frame containing the wet membrane 1231, the mesh frame includes a side frame 1233 on the left and right sides of the wet membrane 1231, and the left and right ends of the wet membrane assembly 123 are respectively slidably matched with the guide rail structures 12232 through the side frame 1233), the guide rail structure 12232 is arranged separately from the corresponding side frame plate 1225, and the side bypass flow channel 122a1 is formed between the guide rail structure 12232 and the corresponding side frame plate 1225, that is, the left guide rail structure 12232 is arranged separately from the left side frame plate 1225, the side bypass flow channel 122a1 is formed between the left guide rail structure 12232 and the left side frame plate 1225, the right guide rail structure 12232 is arranged separately from the right side frame plate 1225, and the side bypass flow channel 122a1 is formed between the right guide rail structure 12232 and the right side frame plate 1225.

[0085] Therefore, by arranging the guide rail structure 12232 in the air duct frame body 122, the wet film assembly 123 can be conveniently and smoothly slid into or out of the air duct frame body 122 along the guide rail structure 12232, greatly simplifying the installation and disassembly process of the wet film assembly 123, and improving the maintainability of the equipment.

[0086] In addition, the guide rail structure 12232 is arranged in the air duct frame body 122, which not only provides an installation path for the wet film assembly 123, but also provides support to the wet film assembly 123, improves the stability of its work, and improves the displacement or damage caused by airflow impact or vibration.

[0087] In some embodiments, referring to Figure 7 The air duct frame body 122 further comprises a connecting beam 1226, which is arranged at the rear side of the front frame plate 1223 in a spaced manner, that is, the connecting beam 1226 is spaced apart from the front frame plate 1223 and arranged at the rear side of the front frame plate 1223, and the left and right ends of the connecting beam 1226 are connected to the lower ends of the guide rail structures 12232 and the lower ends of the side frame plates 1225 of the corresponding sides, respectively.

[0088] In this way, the space directly below the two guide rail structures 12232 is open, forming part of the air inlet area 122a2, and the space directly below the guide rail structures 12232 and the side frame plates 1225 is open, forming part of the air inlet area 122a2, which is directly below the side flow channel 122a1, thereby further reducing the ventilation resistance, improving the ventilation efficiency, and reducing the vibration noise.

[0089] In addition, the connecting beam 1226 is arranged to connect the guide rail structure 12232 and the side frame plate 1225 of the corresponding side, thereby providing support for the guide rail structure 12232, improving the support effect of the guide rail structure 12232 on the wet film assembly 123, and significantly enhancing the structural stability of the entire air duct frame body 122, preventing deformation or damage of the air duct frame body 122 caused by airflow impact or equipment operation.

[0090] In some embodiments, referring to Figure 6 The side flow channel 122a1 is further formed between the front frame plate 1223 and the rear frame plate 1224.

[0091] Therefore, since the side flow channel 122a1 is further formed between the front frame plate 1223 and the rear frame plate 1224, the space in the air duct frame body 122 can be further fully utilized, the structure is simplified, the air flow path in the air duct frame body 122 is simplified, the airflow resistance is reduced, and the air flow efficiency is improved.

[0092] In some embodiments, referring to Figure 8The air duct frame body 122 comprises an integrated first frame body 1221 and an integrated second frame body 1222, that is, the first frame body 1221 is an integral structure that cannot be disassembled, the second frame body 1222 is an integral structure that cannot be disassembled, the first frame body 1221 is connected to the second frame body 1222 in an assembled manner, the first frame body 1221 is assembled at the front side of the second frame body 1222, the first frame body 1221 comprises a front frame plate 1223, a guide rail structure 12232 and a connecting beam 1226, the second frame body 1222 comprises a rear frame plate 1224, and the front frame plate 1223, the side plate 12211, the guide rail structure 12232 and the connecting beam 1226 are integrated on the first frame body 1221 Figure 6 and Figure 7 The left and right sides of the first frame body 1221 are provided with side plates 12211, and the left and right sides of the second frame body 1222 are provided with side frames 12221, the side plates 12211 and the side frames 12221 are combined into a side frame plate 1225, and the connecting beam 1226 is connected to the rear end of the side plate 12211.

[0093] In the above technical solution, the integrated first frame body 1221 and the second frame body 1222 reduce the number of parts during assembly, thereby simplifying the assembly process and improving production efficiency; at the same time, the integrated design reduces errors during assembly, so that the overall structure of the air duct frame body 122 is more stable and can withstand greater external forces.

[0094] The front frame plate 1223, the side plate 12211, the guide rail structure 12232 and the connecting beam 1226 are integrated on the first frame body 1221, so that the connection of the front frame plate 1223, the side plate 12211, the guide rail structure 12232 and the connecting beam 1226 is more reliable, and better support can be provided for the wet film assembly 123.

[0095] In some embodiments, referring to Figure 9 The humidification module 12 further comprises a water tray 121, which is arranged at the bottom of the air duct frame body 122, and the water tray 121 is provided with a ventilation opening 1213 penetrating in the up-down direction, the ventilation opening 1213 is in communication with the air inlet area 122a2 at the bottom of the humidification air duct 122a, the water tray 121 defines a water pool 1210 which is arranged separately from the ventilation opening 1213, the top of the water pool 1210 is open, and the lower end of the wet film 1231 extends into the water pool 1210.

[0096] The water tray 121 is located at the bottom of the air duct frame body 122, and the water tray 121 is provided with a ventilation opening 1213 penetrating in the up-down direction, the ventilation opening 1213 is in communication with the air inlet area 122a2 at the bottom of the humidification air duct 122a, so that air can enter the humidification air duct 122a through the ventilation opening 1213 and fully contact the wet film 1231, thereby improving the humidification efficiency. And this way of supplying water to the wet film 1231 is simple and easy to implement, which is conducive to reducing costs.

[0097] The water tank 121 has a water pool 1210, and the lower end of the wet film 1231 extends into the water pool 1210 to provide the wet film 1231 with required moisture. The top of the water pool 1210 is open to facilitate the lower end of the wet film 1231 to extend into the water pool 1210 to absorb water.

[0098] The water tank 121 is a component part of the bottom of the air duct frame 122, and increases the structural stability of the entire humidifying module 12, so that the humidifying module 12 is more stable and reliable during operation.

[0099] In the above technical solution, the water tank 121 defines the water pool 1210 which is isolated from the air vent 1213. The "isolated" means that the air vent 1213 and the water pool 1210 have independent spaces and functions on the water tank 121, and do not interfere with each other.

[0100] The relative position of the air vent 1213 and the water pool 1210 is not limited. For example, the air vent 1213 is located at the central position of the water tank 121, and the water pool 1210 is located at one side or multiple sides of the water tank 121.

[0101] In some embodiments, referring to Figure 9 , Figure 10 and Figure 11 , in the orthogonal projection of the humidifying module 12 to the horizontal plane, the air vent 1213 includes a main air vent area 12131 and a side air vent area 12132. The wet film assembly 123 covers the main air vent area 12131, and the side air vent area 12132 is located at the outer peripheral area of the wet film assembly 123 and overlaps at least part of the side bypass flow channel 122a1.

[0102] The main air vent area 12131 is covered by the wet film assembly 123, so that the air can fully contact the wet film 1231 when passing through the main air vent area 12131, thereby achieving high-efficiency humidification effect. Meanwhile, the side air vent area 12132 is located at the outer peripheral area of the wet film assembly 123, and can guide part of the air to bypass the wet film assembly 123 and enter the side bypass flow channel 122a1, thereby reducing the resistance of the air passing through the humidifying air duct 122a, and reducing the noise generated by the humidifying module 12 during operation.

[0103] By reasonably designing the size and position of the main air vent area 12131 and the side air vent area 12132, the humidification effect can be ensured, the resistance of the humidifying air duct 122a can be reduced, the noise generated by the humidifying module 12 during operation can be reduced, and the user experience can be improved.

[0104] In some embodiments, referring to Figure 9 , Figure 10 and Figure 11, two sides of the main air outlet area 12131 are respectively provided with side air outlet areas 12132, the water pool 1210 comprises a second water pool 1212, the lower end of the wet membrane assembly 123 extends into the second water pool 1212, the water tray 121 comprises a partition wall 1215 which is spaced between the air vent 1213 and the second water pool 1212, the partition wall 1215 comprises a support wall part 12151 and a limiting wall part 12152, the inclination direction of the support wall part 12151 is consistent with the inclination direction of the wet membrane vent surface 12311, the limiting wall part 12152 is located at both ends of the support wall part 12151, and is recessed relative to the support wall part 12151 towards the direction of the second water pool 1212, the lower end of the wet membrane assembly 123 is limited between the limiting wall parts 12152 on both sides, and the recess 12153 formed by the recessing of the limiting wall part 12152 constitutes at least part of the side air outlet area 12132.

[0105] The support wall part 12151 of the partition wall 1215 is consistent with the inclination direction of the wet membrane vent surface 12311, effectively avoiding the wet membrane assembly 123 and avoiding interference with the wet membrane assembly 123, and can minimize the shielding of the air vent 1213 to improve the ventilation area of the air vent 1213.

[0106] The limiting wall part 12152 of the partition wall 1215 limits the displacement of the wet membrane assembly 123 in the left-right direction, so that the wet membrane 1231 can be stably positioned in the second water pool 1212 to absorb water.

[0107] The recess 12153 formed by the recessing of the limiting wall part 12152 constitutes at least part of the side air outlet area 12132, increasing the area of the side air outlet area 12132, thereby increasing the flow of air treatment.

[0108] In some embodiments, referring to Figure 9 The water tray 121 comprises a front wall 1216 and a side wall 1217, the front wall 1216 is spaced between the partition wall 1215 front and back, the left and right ends of the front wall 1216 and the left and right ends of the partition wall 1215 are connected by the side wall 1217 respectively, the air vent 1213 is surrounded between the front wall 1216, the partition wall 1215 and the two side walls 1217, the support wall part 12151 and the front wall 1216 form the main air outlet area 12131, and the limiting wall part 12152 and the end part of the side wall 1217 and the front wall 1216 form the side air outlet area 12132.

[0109] The front wall 1216, the partition wall 1215 and the two side walls 1217 form the air vent 1213, ensuring the sealing of the air vent 1213, effectively preventing the intrusion of external dust, water vapor and other impurities, and providing a good sealed environment for air treatment.

[0110] Exemplarily, an upper side of each of the side wind port areas 12132 is provided with a side bypass flow channel 122a1, so that each of the side bypass flow channels 122a1 can take in air through the respective lower side wind port area 12132, further reducing the ventilation resistance, and the air passing through the two side bypass flow channels 122a1 and the humidified air passing through the humidifying film assembly 123 can be more fully mixed, which is beneficial to ensuring the humidity uniformity of the outgoing air and improving the user experience.

[0111] In some embodiments, referring to Figure 8 and Figure 9 , the water tank 1210 further includes a first water tank 1211 located at the front side of the front wall 1216, and a third water tank 1219 located at the side of the side wall 1217 away from the air vent 1213 and communicating with the first water tank 1211 and the second water tank 1212, and the humidifying module 12 further includes a water tank 124 arranged above the water tray 121 and injecting water into the first water tank 1211.

[0112] In this way, the water injected by the water tank 124 into the first water tank 1211 can flow to the third water tank 1219 and then to the second water tank 1212, so that the water tank 124 can be arranged away from the second water tank 1212 to avoid interference with the humidifying film assembly 123.

[0113] Next, referring to the accompanying drawings, the air treatment component 1 according to the second aspect of the present application is described.

[0114] As Figure 12 and Figure 13 , the air treatment component 1 includes a fresh air module 11, a purification module 13, and a humidifying module 12, the fresh air module 11 includes a fresh air fan 111, the purification module 13 is located downstream of the fresh air fan 111, the humidifying module 12 is arranged downstream of the purification module 13, and is the humidifying module 12 according to any one of the embodiments of the first aspect of the present application. Wherein, "downstream" refers to the position reached in the airflow direction.

[0115] The fresh air module 11, the purification module 13, and the humidifying module 12 can be arranged in sequence along the airflow direction, wherein the airflow introduced by the fresh air module 11 can first flow through the purification module 13 and then flow through the humidifying module 12, and at least one of humidification and purification can be realized according to the type selection and opening control of the purification module 13 and the humidifying module 12.

[0116] Therefore, by using the above-mentioned humidifying module 12, the ventilation resistance and noise of the air treatment component 1 can be reduced.

[0117] In some embodiments, the fresh air fan 111 is a centrifugal fan 111a, and the air outlet of the centrifugal fan 111a is upward, the purification module 13 is located above the fresh air module 11, and the humidification module 12 is located above the purification module 13. The air duct frame 122 is installed above the water tank 121, and the wet film assembly 123 is installed in the air duct frame 122. This design makes the air flow sent upward by the centrifugal fan 111a flow through the purification module 13 and the humidification module 12 in turn, which not only saves space but also improves space utilization, so that the whole system is more suitable for installation in limited space, such as home, office and the like. The centrifugal fan 111a has the characteristics of large air volume and high air pressure, and can quickly blow the air flow to the purification module 13 and the wet film assembly 123, which is beneficial to overcome the resistance of the purification module 13 and the wet film assembly 123, and improve the air treatment efficiency.

[0118] Next, the air conditioner 100 according to the third aspect of the present application is described with reference to the accompanying drawings.

[0119] Referring to Figure 14 and Figure 15 , the air conditioner 100 comprises the humidification module 12 according to any embodiment of the first aspect of the present application or the air treatment component 1 according to the second aspect of the present application. That is, the air conditioner 100 can comprise the air treatment component 1 in the above form, or can not comprise the air treatment component 1 in the above form, but separately comprises the humidification module 12.

[0120] Therefore, by using the above humidification module 12 or air treatment component 1, the ventilation resistance and noise of the air conditioner 100 can be reduced.

[0121] Exemplarily, in combination with Figure 14 and Figure 15 , when the air conditioner 100 comprises the air treatment component 1, the air conditioner 100 can also simultaneously comprise the ventilation and heat exchange component 2, which can comprise a fan and a heat exchanger. When the ventilation and heat exchange component 2 works, the fan introduces indoor air from the air conditioner inlet, and blows the introduced air back to the indoor after heat exchange with the heat exchanger, thereby playing a role of indoor temperature regulation.

[0122] Among them, the type of air conditioner 100 is not limited, for example, it can be an all-in-one air conditioner (such as a kitchen air conditioner, a mobile air conditioner, a window type air conditioner, etc.) or an air conditioner split machine (such as a split hanging machine, a split cabinet machine, etc.), when the type of air conditioner 100 is determined, the relative position of the air treatment component 1 and the ventilation and heat exchange component 2 can be known. For example, when the air conditioner 100 is a cabinet machine, the ventilation and heat exchange component 2 can be located above the air treatment component 1.

[0123] Other configurations of the air conditioner 100, such as air duct components and panel components, and operations are known to those of ordinary skill in the art, and are not described in detail herein.

[0124] In the description of the present application, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.

[0125] In addition, the terms "first" and "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the technical features indicated. Therefore, the features defined as "first" and "second" can explicitly or implicitly include one or more of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0126] In the present application, unless otherwise specifically defined and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or it can be integrated; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the internal communication of two elements or the interaction relationship of two elements. For those of ordinary skill in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0127] In the present application, unless otherwise specifically defined and limited, the first feature "on" or "under" the second feature can be that the first and second features are in direct contact, or the first and second features are in indirect contact through an intermediate medium. Moreover, the first feature "above", "above" and "above" the second feature can be that the first feature is directly above or obliquely above the second feature, or only indicates that the horizontal height of the first feature is higher than that of the second feature. The first feature "below", "below" and "below" the second feature can be that the first feature is directly below or obliquely below the second feature, or only indicates that the horizontal height of the first feature is less than that of the second feature.

[0128] In the description of the present specification, the description referring to the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In the present specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. Furthermore, the person skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples, without mutual contradiction.

[0129] Although the embodiments of the present application have been shown and described, those skilled in the art can understand that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and purposes of the present application, and the scope of the present application is defined by the claims and their equivalents.

Claims

1. A humidification module, characterized by, The humidification module comprises: a wind channel frame body defining a humidification wind channel, the bottom of the humidification wind channel being open to form an air inlet area; a wet film assembly arranged in the humidification wind channel, the humidification wind channel comprising a side flow channel; wherein in the orthogonal projection of the humidification module to the horizontal plane, the side flow channel is located at the periphery of the wet film assembly so that the air flow passing through the side flow channel avoids the wet film assembly.

2. The humidification module of claim 1, wherein, The wet film assembly comprises a wet film, the two side surfaces of the wet film in the thickness direction being wet film ventilation surfaces, and the wet film ventilation surfaces are inclined to the horizontal plane.

3. The humidification module of claim 2, wherein, The wet film ventilation surfaces are inclined downward along the front-to-back direction, and the left and right sides of the wet film assembly are respectively provided with the side flow channels.

4. The humidification module of claim 3, wherein, The wind channel frame body comprises a front frame plate, a rear frame plate and two side frame plates, the humidification wind channel is formed between the front frame plate, the rear frame plate and the two side frame plates, and the wet film assembly is arranged separately from the two side frame plates so that the side flow channels are formed between the side frame plates and the wet film assembly.

5. The humidification module of claim 4, wherein, The front frame plate has an insertion port extending in the left-right direction; the wind channel frame body is provided with a guide rail structure, the guide rail structure is inclined downward from the left and right ends of the insertion port, the left and right ends of the wet film assembly are respectively slidably connected to the two guide rail structures, the guide rail structure and the corresponding side frame plate are arranged separately, and the side flow channel is formed between the guide rail structure and the corresponding side frame plate.

6. The humidification module of claim 5, wherein, The wind channel frame body further comprises a connecting beam arranged on the rear side of the front frame plate, the left and right ends of the connecting beam are respectively connected to the lower ends of the guide rail structures and the corresponding side frame plates, the area directly below the two guide rail structures is open to form part of the air inlet area, and the area directly below each guide rail structure and the corresponding side frame plate is open to form part of the air inlet area.

7. The humidification module of claim 4, wherein, The side flow channel is also formed between the front frame plate and the rear frame plate.

8. The humidification module of claim 6, wherein, The wind channel frame body comprises an integrated first frame body and an integrated second frame body, the first frame body is assembled on the front side of the second frame body, the first frame body comprises the front frame plate, the guide rail structure and the connecting beam, the second frame body comprises the rear frame plate, the left and right sides of the first frame body have side plates, the left and right sides of the second frame body have side frames, the side plates and the side frames are combined into the side frame plates, and the connecting beam is connected to the rear ends of the side plates.

9. The humidification module of claim 2, wherein, The humidification module further comprises a water tray arranged at the bottom of the wind channel frame body, the water tray has a ventilation opening penetrating in the up-down direction, the ventilation opening is in communication with the air inlet area at the bottom of the humidification wind channel, the water tray defines a water pool arranged separately from the ventilation opening, the top of the water pool is open, and the lower end of the wet film extends into the water pool.

10. The humidification module of claim 9, wherein, In the orthogonal projection of the humidification module to the horizontal plane, the ventilation opening comprises a main air opening area and a side air opening area, the wet film assembly covers the main air opening area, and the side air opening area is located at the peripheral region of the wet film assembly and at least partially overlaps with the side flow channel.

11. The humidification module of claim 10, wherein, The main air outlet area is flanked by side air outlet areas, the water tank comprises a second water tank, the lower end of the wet membrane assembly extends into the second water tank, the water tray comprises a partition wall spaced between the air vent and the second water tank, the partition wall comprises a support wall portion and a limiting wall portion, the support wall portion is inclined in the same direction as the wet membrane air vent, the limiting wall portion is located at both ends of the support wall portion and is recessed towards the second water tank relative to the support wall portion, the lower end of the wet membrane assembly is limited between the limiting wall portions on both sides, and the recess formed by the recessed limiting wall portions constitutes at least part of the side air outlet area.

12. The humidification module of claim 11, wherein, The water tray comprises a front wall and a side wall, the front wall is spaced apart from the partition wall front and back, the left and right ends of the front wall and the left and right ends of the partition wall are connected by the side wall, the air vent is surrounded between the front wall, the partition wall and the two side walls, the support wall portion and the front wall form the main air outlet area, and the limiting wall portion and the end of the side wall and the front wall form the side air outlet area.

13. The humidification module of claim 12, wherein, The water tank further comprises a first water tank and a third water tank, the first water tank is located on the front side of the front wall, the third water tank is located on the side of the side wall away from the air vent, and is connected to the first water tank and the second water tank, the humidifying module further comprises a water tank, the water tank is arranged above the water tray and the first water tank is supplied with water.

14. The humidification module of claim 11, wherein, The upper side of each side air outlet area is provided with a side bypass channel.

15. An air handling component, characterized by, It comprises: A fresh air module, the fresh air module comprises a fresh air fan; A purification module, the purification module is located downstream of the fresh air fan; A humidifying module, the humidifying module is arranged downstream of the purification module, and is the humidifying module according to any one of claims 1-14.

16. An air conditioner characterized by comprising: It comprises: The humidifying module according to any one of claims 1-14 or the air treatment component according to claim 15.